arrow
Return

Intervertebral Disc-on-a-ChipMF: A New Model for Mouse Disc Culture via Integrating Mechanical Loading and Dynamic Media Flow

delete2023-08-27
delete0
delete
OA
AI
W
Wanqing Xie
Y
Yuan Xing
L
Li Xiao
P
Pu Zhang
R
Richard Oh
Y
Yangpu Zhang
X
Xiaoyu Yu
H
He, Yi
E
Eunha Oh
R
Ruofan Cao
M
Melur K. Ramasubramanian
王勇 (Yong Wang)
L
Li Jin
J
Jose Oberhozler *
李旭东 (Xudong Li) *
DOI:10.1002/admt.202300606delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
This study aims to develop an ex vivo organ-on-a-chip model, intervertebral Disc-on-a-Chip(MF), to investigate integrated effects of mechanical loading and nutrition on disc health. The system consists of a detachable multilayer microfluidic chip, a Computer-Arduino-based control system, and a mechanical loading unit, which are optimized for accurate axial force measurement and the maintenance of a 21-day ex vivo disc culture. To ensure accuracy of axial force, the axial mechanical loading regimen is optimized, using the Computer-Arduino-based system and low-profile force sensors (LPFS) to control the mechanical loading unit, and the force distribution on the disc surface is modeled by computational simulation. A 21-day ex vivo disc culture is demonstrated using the Disc-on-a-Chip(MF) system, with optimized mechanical loading (0.02 MPa at 1Hz, 1.5 hr day(-1)) and flow rate (1 mu L min(-1)). The structural integrity, collagen breakdown, catabolic enzyme activities, and disc cell and collagen alignment reveal that the on-chip cultured discs exhibit a preferred disc health similar to that of native discs for up to 21 days, while discs in a static culture show degenerative changes. The mouse Disc-on-a-Chip(MF) system mimics in vivo disc microenvironment and provides a valuable platform for studying the effects of various factors on disc health and degeneration and testing new therapies.
Keywords:
bioreactors
intervertebral disc degeneration
mechanical loading
microfluidic
organ-on-a-chip

Journal

Advanced Materials Technologies cover
Advanced Materials Technologies
IF:
6.2
Papers:
5.2K
Citations:
2.4W

Organization

U
university of zurich
Scholars:
5.0W
Papers: 3.9W
Citations: 65
U
University of Virginia
Scholars:
3.0W
Papers: 2.7W
Citations: 4.1W
U
University of Mississippi
Scholars:
9.5K
Papers: 7.9K
Citations: 5.8K
researcher View more organizations